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WIMP Dark Matter and Unitarity-Conserving Inflation via a Gauge Singlet Scalar

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arxiv 1507.03600 v2 pith:NUUU6JZQ submitted 2015-07-13 astro-ph.CO hep-ph

WIMP Dark Matter and Unitarity-Conserving Inflation via a Gauge Singlet Scalar

classification astro-ph.CO hep-ph
keywords inflationsingletdarkmatterscalarhiggsgaugeparameter
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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A gauge singlet scalar with non-minimal coupling to gravity can drive inflation and later freeze out to become cold dark matter. We explore this idea by revisiting inflation in the singlet direction (S-inflation) and Higgs Portal Dark Matter in light of the Higgs discovery, limits from LUX and observations by Planck. We show that large regions of parameter space remain viable, so that successful inflation is possible and the dark matter relic abundance can be reproduced. Moreover, the scalar singlet can stabilise the electroweak vacuum and at the same time overcome the problem of unitarity-violation during inflation encountered by Higgs Inflation, provided the singlet is a real scalar. The 2-$\sigma$ Planck upper bound on $n_s$ imposes that the singlet mass is below 2 TeV, so that almost the entire allowed parameter range can be probed by XENON1T.

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